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A Convergent Study on Flow Analysis near Trailer due to Shape of Wind Deflector

윈드 디플렉터 형상에 따른 트레일러 주위의 유동해석에 관한 융합 연구

  • Choi, Kye-Kwang (Department of Metal Mold Design Engineering, Kongju national University) ;
  • Cho, Jae-Ung (Division of Mechanical & Automotive Engineering, Kongju National University)
  • 최계광 (공주대학교 금형설계공학과) ;
  • 조재웅 (공주대학교 기계자동차공학부)
  • Received : 2020.05.18
  • Accepted : 2020.08.20
  • Published : 2020.08.28

Abstract

In this study, the flow analyses around according to the existence or non- existence of the trailer's deflector and the shapes were carried out. In the absence of a deflector, the kinetic energy of the turbulence behind the container also generates higher kinetic energy in a wider area than in the presence of a deflector, which adversely affects the vehicle's driving performance. As a trailer's wind deflector-free model has unstable flow rates around the trailer and high kinetic energy of turbulence than a model with a deflector, it can be thought that the increase of fuel economy can be expected by installing a deflector in the trailer. By applying the study result on flow analysis near trailer due to shape of wind deflector, this study is seen to be suitable for the aesthetic convergence.

본 연구에서는 트레일러의 디플렉터의 유무 및 그 형상들에 따른 주위의 유동해석을 하였다. 디플렉터가 없는 경우는 디플렉터가 있는 경우보다 컨테이너 뒤로 생기는 난류의 운동에너지도 더 넓은 영역에서 더 높은 운동 에너지가 발생하여 그 항력으로 인하여 차량의 주행성에 나쁜 영향을 미친다. 트레일러의 윈드 디플렉터가 없는 모델은 디플렉터가 있는 모델보다 트레일러 주변 유속이 불안정하고, 난류의 운동에너지도 많이 생겨서, 트레일러에 디플렉터를 설치하므로서 그 연비상승을 기대할 수 있다고 사료된다. 윈드 디플렉터 형상에 따른 트레일러 주위의 유동해석에 대한 연구결과를 적용함으로서, 본 연구가 미적인 융합에 적합된다고 보인다.

Keywords

References

  1. H. C. Lee & J. U. Cho. (2014). A Study on Air Flow Analysis due to the Shape of Automotive Body. Journal of the Korea Convergence Society, 5(2), 19-23. DOI : 10.15207/JKCS.2014.5.2.019
  2. R. D. Gyeom & L. K. Bock. (2019). Flow Characteristics and Wind Loads on the Solar Panel and Floating System of Floating Solar Generato. Journal of the Korea Academia-Industrial cooperation Society, 20(10), 229-235. DOI : 10.5762/KAIS.2019.20.10.229
  3. D. W. Jeong, Y. S. Won & S. H. Kang. (2019). Comparison Study on Aerodynamic Performance and Wake Flow Field for a MW-Class Wind Turbine Model. Journal of the Korean Society of Visualization, 17(2), 32-38 DOI : 10.5407/jksv.2019.17.2.032
  4. S. W. Park, I. S. Choi, K. C. Noh, S. P. Ryu & K. S. Yoon. (2012). An Experimental Study on Measurement of Flow Coefficient Using the Steady-Flow Test Rig. Journal of the Korean Society of Marine Engineering, 36(4), 423-429. DOI : 10.5916/jkosme.2012.36.4.423
  5. G. H. Kim & D. R. Lee. (2016). A Study on The Flow Analysis in the Turbocharger Turbine with Different Rotational speeds. Journal of the Korean Society of Mechanical Technology, 18(5), 734-739. DOI : 10.17958/ksmt.18.5.201610.734
  6. C. H. Choi, J. G. Noh & J. H. Kim. (2010). Numerical Simulation of Cavitating Flow Around Turbopump Inducer. The KSFM Journal of Fluid Machinery, 13(3), 49-53. DOI : 10.5293/KFMA.2010.13.3.049
  7. S. H. Jo, J. I. Park & K. W. Nam. (2006). Numerical Simulation in the IC Engine Lubricating Gerotor Oil Pump. Transactions of the Korean Society of Mechanical Engineers B, 30(10), 1019-1025. DOI : 10.3795/KSME-B.2006.30.10.1019
  8. C. S. Won, N. K. Hur & S. H. Kwon. (2013). Flow Analysis of Automotive Oil Pump of Gerotor Type. The KSFM Journal of Fluid Machinery, 6(4), 7-13. DOI : 10.5293/KFMA.2003.6.4.007
  9. J. U. Cho. (2014). A Flow Analysis on Wing Shape of Cooling Fan at Automobile. Journal of the Korea Convergence Society, 5(4), 75-79. DOI : 10.15207/jkcs.2014.5.4.075
  10. J. U. Cho. (2015). Study on Convergence Technique through the Flow Analytical Study inside the Faucet for Bathroom. Journal of the Korea Convergence Society, 6(2), 37-42. DOI : 10.15207/JKCS.2015.6.2.037
  11. B. S. Oh & J. U. Cho. (2019). Convergence Study on Durability Analysis of Scooter Seat. Journal of the Korea Convergence Society, 10(6), 165-170. DOI : 10.15207/JKCS.2019.10.6.165
  12. J. H. Lee & J. U. Cho. (2015). Study on Convergence Technique through Flow Analysis at the Flexible Joint of the Pipe Laying. Journal of the Korea Convergence Society, 6(3), 13-18. DOI : 10.15207/JKCS.2015.6.3.013
  13. J. B. Lee, D. H. Yang, S. Y. Kim & K. S. Kim. (2015). A Study on Flow Analysis of the Blast Valve for Anti-aircraft Shelter. Journal of the Korean Society of Mechanical Technology, 17(5), 1107-1115. DOI : 10.17958/ksmt.17.5.201510.1107
  14. H. J. Kim & S. H. Kim. (2015). A Study on Air Flow Characteristics of Mid-mower for Tractor(I). Journal of the Korean Society of Manufacturing Process Engineers, 14(3), 27-35. DOI : 10.14775/ksmpe.2015.14.3.027
  15. H. J. Kim & Y. M. Lee. (2014). Experimental Study on Air Flow Characteristics of Axial Dual-blade Fan. Journal of the Korean Society of Manufacturing Process Engineers, 13(4), 113-120. DOI : 10.14775/ksmpe.2014.13.4.113
  16. J. L. Cui, M. H. Chey & S. I. Kim. (2016). Seismic Performance of Urban Structures with Various Horizontal Irregularities using Equivalent Static Analysis. Journal of Convergence for Information Technology, 6(1), 25-32.
  17. W. B. Lee, S. H. Ryu, W. Y. Hao & B. P. Kyung. (2015). Dismantling Simulation of Nuclear Reactor Using Partial Mesh Cutting Method for 3D Model. Journal of Digital Convergence, 13(4), 303-310. https://doi.org/10.14400/JDC.2015.13.4.303